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呼吸运动对质子笔形束扫描闪疗的影响:体模测量研究

Impact of respiratory motion on proton pencil beam scanning FLASH radiotherapy: anand phantom measurement study.

作者信息

Yang Yunjie, Kang Minglei, Huang Sheng, Chen Chin-Cheng, Tsai Pingfang, Hu Lei, Yu Francis, Hajj Carla, Choi J Isabelle, Tome Wolfgang A, Simone Charles B, Lin Haibo

机构信息

New York Proton Center, New York, NY, United States of America.

Department of Medical Physics, Memorial Sloan Kettering Cancer Center, New York, NY, United States of America.

出版信息

Phys Med Biol. 2023 Apr 4;68(8). doi: 10.1088/1361-6560/acc632.

Abstract

. To investigate the effects of respiratory motion on the delivered dose in the context of proton pencil beam scanning (PBS) transmission FLASH radiotherapy (FLASH-RT) by simulation and phantom measurements.. An in-house simulation code was employed to performsimulation of 2D dose distributions for clinically relevant proton PBS transmission FLASH-RT treatments. A moving simulation grid was introduced to investigate the impacts of various respiratory motion and treatment delivery parameters on the dynamic PBS dose delivery. A strip-ionization chamber array detector and an IROC motion platform were employed to perform phantom measurements of the 2D dose distribution for treatment fields similar to those used for simulation.. Clinically relevant respiratory motion and treatment delivery parameters resulted in degradation of the delivered dose compared to the static delivery as translation and distortion. Simulation showed that the gamma passing rates (2 mm/2% criterion) and target coverage could drop below 50% and 80%, respectively, for certain scenarios if no mitigation strategy was used. The gamma passing rates and target coverage could be restored to more than 95% and 98%, respectively, for short beams delivered at the maximal inhalation or exhalation phase. The simulation results were qualitatively confirmed in phantom measurements with the motion platform.. Respiratory motion could cause dose quality degradation in a clinically relevant proton PBS transmission FLASH-RT treatment if no mitigation strategy is employed, or if an adequate margin is not given to the target. Besides breath-hold, gated delivery can be an alternative motion management strategy to ensure high consistency of the delivered dose while maintaining minimal dose to the surrounding normal tissues. To the best of our knowledge, this is the first study on motion impacts in the context of proton transmission FLASH radiotherapy.

摘要

通过模拟和体模测量研究质子笔形束扫描(PBS)传输式FLASH放疗(FLASH-RT)中呼吸运动对所输送剂量的影响。采用内部模拟代码对临床相关的质子PBS传输式FLASH-RT治疗的二维剂量分布进行模拟。引入移动模拟网格以研究各种呼吸运动和治疗输送参数对动态PBS剂量输送的影响。使用条状电离室阵列探测器和IROC运动平台对与模拟中使用的类似治疗野的二维剂量分布进行体模测量。与静态输送相比,临床相关的呼吸运动和治疗输送参数导致所输送剂量因平移和变形而降低。模拟表明,如果不采用缓解策略,在某些情况下,伽马通过率(2毫米/2%标准)和靶区覆盖度可能分别降至50%以下和80%以下。对于在最大吸气或呼气阶段输送的短束,伽马通过率和靶区覆盖度可分别恢复到95%以上和98%以上。在使用运动平台的体模测量中定性地证实了模拟结果。如果不采用缓解策略,或者不给靶区足够的边界,呼吸运动可能会导致临床相关的质子PBS传输式FLASH-RT治疗中的剂量质量下降。除了屏气,门控输送可以是一种替代的运动管理策略,以确保所输送剂量的高度一致性,同时使周围正常组织的剂量保持最小。据我们所知,这是第一项关于质子传输式FLASH放疗中运动影响的研究。

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